Interaction Effects in a 1D Flat Band at a Topological Crystalline Step Edge

Nano Lett. 2023 Apr 12;23(7):2476-2482. doi: 10.1021/acs.nanolett.2c03794. Epub 2023 Mar 27.

Abstract

Step edges of topological crystalline insulators can be viewed as predecessors of higher-order topology, as they embody one-dimensional edge channels embedded in an effective three-dimensional electronic vacuum emanating from the topological crystalline insulator. Using scanning tunneling microscopy and spectroscopy, we investigate the behavior of such edge channels in Pb1-xSnxSe under doping. Once the energy position of the step edge is brought close to the Fermi level, we observe the opening of a correlation gap. The experimental results are rationalized in terms of interaction effects which are enhanced since the electronic density is collapsed to a one-dimensional channel. This constitutes a unique system to study how topology and many-body electronic effects intertwine, which we model theoretically through a Hartree-Fock analysis.

Keywords: Hartree−Fock; strong correlations in flat bands; topological crystalline insulators; topological edge states.